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2.4μFC1C22.4μFR36.8kΩR46.8kΩR56.8kΩ230001C32.4μF4196kΩRfUA741CDU1015VV1V215V5060PR1 V
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V —
V —
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VAV —
fV —
I —
I —
IPP —
IRMS —
IAV —
fI —
D —

ID:

ID:

x10
x0.1
Sheet:1
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SPICE
SPICE Netlist

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** RC phase shift oscillator using op-amp **
*
* Multisim Live SPICE netlist
*
*

* --- Circuit Topology ---

* Component: C1
cC1 1 2 0.0000024

* Component: C2
cC2 2 3 0.0000024

* Component: C3
cC3 4 1 0.0000024

* Component: R3
rR3 1 0 6800 VIRTUAL_RESISTANCE_R3

* Component: R4
rR4 2 0 6800 VIRTUAL_RESISTANCE_R4

* Component: R5
rR5 3 0 6800 VIRTUAL_RESISTANCE_R5

* Component: Rf
rRf 3 4 196000 VIRTUAL_RESISTANCE_Rf

* Component: U1
xU1 0 3 5 6 4 MC1458_3_U1

* Component: V1
vV1 5 0 dc 15 ac 0 0
+ distof1 0 0
+ distof2 0 0

* Component: V2
vV2 0 6 dc 15 ac 0 0
+ distof1 0 0
+ distof2 0 0


* --- Circuit Models ---

* R3 model
.model VIRTUAL_RESISTANCE_R3 r( )

* R4 model
.model VIRTUAL_RESISTANCE_R4 r( )

* R5 model
.model VIRTUAL_RESISTANCE_R5 r( )

* Rf model
.model VIRTUAL_RESISTANCE_Rf r( )


* --- Subcircuits ---

* U1 subcircuit
*****************************************************************************
* (C) Copyright 2002 Texas Instruments Incorporated. All rights reserved.
*****************************************************************************
** This model is designed as an aid for customers of Texas Instruments.
** TI and its licensors and suppliers make no warranties, either expressed
** or implied, with respect to this model, including the warranties of
** merchantability or fitness for a particular purpose. The model is
** provided solely on an as is basis. The entire risk as to its quality
** and performance is with the customer.
*****************************************************************************
* MC1458 OPERATIONAL AMPLIFIER "MACROMODEL" SUBCIRCUIT
* CREATED USING PARTS RELEASE 4.01 ON 07/05/89 AT 09:09
* (REV N/A) SUPPLY VOLTAGE: +/-15V
* CONNECTIONS: NON-INVERTING INPUT
* | INVERTING INPUT
* | | POSITIVE POWER SUPPLY
* | | | NEGATIVE POWER SUPPLY
* | | | | OUTPUT
* | | | | |
.subckt MC1458_3_U1 1 2 3 4 5
*
C1 11 12 4.664E-12
C2 6 7 20.00E-12
DC 5 53 DX
DE 54 5 DX
DLP 90 91 DX
DLN 92 90 DX
DP 4 3 DX
EGND 99 0 POLY(2) (3,0) (4,0) 0 .5 .5
FB 7 99 POLY(5) VB VC VE VLP VLN 0 10.61E6 -10E6 10E6 10E6 -10E6
GA 6 0 11 12 137.7E-6
GCM 0 6 10 99 2.574E-9
IEE 10 4 DC 10.16E-6
HLIM 90 0 VLIM 1K
Q1 11 2 13 QX
Q2 12 1 14 QX
R2 6 9 100.0E3
RC1 3 11 7.957E3
RC2 3 12 7.957E3
RE1 13 10 2.740E3
RE2 14 10 2.740E3
REE 10 99 19.69E6
RO1 8 5 150
RO2 7 99 150
RP 3 4 18.11E3
VB 9 0 DC 0
VC 3 53 DC 2.600
VE 54 4 DC 2.600
VLIM 7 8 DC 0
VLP 91 0 DC 25
VLN 0 92 DC 25
.MODEL DX D(IS=800.0E-18)
.MODEL QX NPN(IS=800.0E-18 BF=62.50)
.ENDS

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RC phase shift oscillator using op-amp
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End time

s

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Mode

Threshold voltage levels.

Threshold voltage values used in the logic evaluation. See Digital Simulation for more information.

Output low

V

Output low voltage.

Maximum output voltage level to produce a low signal.

Input low threshold

V

Input low threshold voltage.

Maximum input voltage level for the signal to be considered low.

Input high threshold

V

Input high threshold voltage.

Minimum input voltage level for the signal to be considered high.

Output high

V

Output high voltage.

Minimum output voltage level to produce a high signal.

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